National Medical Research Center for Obstetrics, Gynecology and Perinatology Named after V.I.Kulakov, of the Ministry of Healthcare of Russian Federation, 117198 Moscow, Russia.
Center of Life Sciences, Skolkovo Institute of Science and Technology (Skoltech), 121205 Skolkovo, Russia.
Cells. 2021 Sep 19;10(9):2484. doi: 10.3390/cells10092484.
With the nucleus as an exception, mitochondria are the only animal cell organelles containing their own genetic information, called mitochondrial DNA (mtDNA). During oocyte maturation, the mtDNA copy number dramatically increases and the distribution of mitochondria changes significantly. As oocyte maturation requires a large amount of ATP for continuous transcription and translation, the availability of the right number of functional mitochondria is crucial. There is a correlation between the quality of oocytes and both the amount of mtDNA and the amount of ATP. Suboptimal conditions of in vitro maturation (IVM) might lead to changes in the mitochondrial morphology as well as alternations in the expression of genes encoding proteins associated with mitochondrial function. Dysfunctional mitochondria have a lower ability to counteract reactive oxygen species (ROS) production which leads to oxidative stress. The mitochondrial function might be improved with the application of antioxidants and significant expectations are laid on the development of new IVM systems supplemented with mitochondria-targeted reagents. Different types of antioxidants have been tested already on animal models and human rescue IVM oocytes, showing promising results. This review focuses on the recent observations on oocytes' intracellular mitochondrial distribution and on mitochondrial genomes during their maturation, both in vivo and in vitro. Recent mitochondrial supplementation studies, aiming to improve oocyte developmental potential, are summarized.
除核体外,线粒体是唯一含有自身遗传信息的动物细胞细胞器,称为线粒体 DNA(mtDNA)。在卵母细胞成熟过程中,mtDNA 拷贝数显著增加,线粒体的分布也发生显著变化。由于卵母细胞成熟需要大量 ATP 进行连续转录和翻译,因此功能正常的线粒体的数量至关重要。卵母细胞的质量与 mtDNA 数量和 ATP 含量之间存在相关性。体外成熟(IVM)的条件不佳可能导致线粒体形态发生变化,以及与线粒体功能相关的蛋白编码基因的表达发生改变。功能失调的线粒体对抗活性氧(ROS)产生的能力降低,从而导致氧化应激。应用抗氧化剂可以改善线粒体功能,人们对添加了靶向线粒体的试剂的新 IVM 系统的发展寄予厚望。已经在动物模型和人类救援 IVM 卵母细胞上测试了不同类型的抗氧化剂,结果显示出了良好的前景。本文综述了最近关于卵母细胞在体内和体外成熟过程中细胞内线粒体分布和线粒体基因组的观察结果。总结了旨在提高卵母细胞发育潜能的最近的线粒体补充研究。